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Fully Accessible Ag Nanoparticles within Three-dimensionally Ordered Macroporous SiO2

机译:三维有序大孔SiO2中的完全可访问的Ag纳米颗粒

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A multi-step process was used for preparation of three-dimensionally ordered macroporous (3DOM) SiO2, in which fully accessible Ag nanoparticles are incorporated. The method involves the processes of assembly of polystyrene colloidal crystal, preparation of 3DOM SiO2, and incorporation of Ag nanoparticles within 3DOM SiO2 through in situ Tollens' reaction. XRD, SEM and EDXS determination show that the Ag particles deposited on the macroporous walls in nano dimension. The results indicate that lower concentration of silver ammoniate and for-maldehyde in the solution is favorable for forming a very narrow size distribution and uniform shape of nanoparticles. However, the higher the concentration of the solution and the more the loading times, the larger the possibility to form un-uniform particles. Ag nanoparticles can be sintered into larger and spheral particles by calcination at 600℃, but can resist sintering owing to their high dispersivity when loading amount is small. The study provided a simple approach to tailor Ag/3DOM SiO2 composite materials with desired morphology and size of Ag particles within the macropores.
机译:多步骤过程用于制备三维有序大孔(3DOM)SiO2,其中掺入了完全可及的Ag纳米颗粒。该方法涉及组装聚苯乙烯胶体晶体,制备3DOM SiO2以及通过原位Tollens反应将Ag纳米颗粒掺入3DOM SiO2中的过程。 XRD,SEM和EDXS测定表明,Ag颗粒以纳米尺寸沉积在大孔壁上。结果表明,溶液中较低的氨化银和甲醛含量有利于形成非常窄的尺寸分布和均匀的纳米颗粒形状。但是,溶液的浓度越高,装载时间越多,形成不均匀颗粒的可能性就越大。 Ag纳米颗粒可以在600℃下煅烧成较大的球形颗粒,但是当负载量较小时,由于它们的高分散性,可以抵抗烧结。该研究提供了一种简单的方法来定制具有所需形态和大孔内Ag颗粒尺寸的Ag / 3DOM SiO2复合材料。

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